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通过化学交联以及将载脂蛋白C-II反应性脂解作用从脂蛋白脂肪酶转移至肝脂肪酶来鉴定脂蛋白脂肪酶辅因子结合位点。

Identification of a lipoprotein lipase cofactor-binding site by chemical cross-linking and transfer of apolipoprotein C-II-responsive lipolysis from lipoprotein lipase to hepatic lipase.

作者信息

McIlhargey Trina L, Yang Yingying, Wong Howard, Hill John S

机构信息

University of British Columbia McDonald Research Laboratories/iCAPTUR4E Centre, Department of Pathology and Laboratory Medicine, St. Paul's Hospital and the University of British Columbia, Vancouver, Canada.

出版信息

J Biol Chem. 2003 Jun 20;278(25):23027-35. doi: 10.1074/jbc.M300315200. Epub 2003 Apr 7.

Abstract

To localize the regions of lipoprotein lipase (LPL) that are responsive to activation by apoC-II, an apoC-II peptide fragment was cross-linked to bovine LPL. Following chemical hydrolysis and peptide separation, a specific fragment of LPL (residues 65-86) was identified to interact with apoC-II. The fragment contains regions of amino acid sequence dissimilarity compared with hepatic lipase (HL), a member of the same gene family that is not responsive to apoC-II. Using site-directed mutagenesis, two sets of chimeras were created in which the two regions of human LPL (residues 65-68 and 73-79) were exchanged with the corresponding human HL sequences. The chimeras consisted of an HL backbone with the suspected LPL regions replacing the corresponding HL sequences either individually (HLLPL-(65-68) and HLLPL-(73-79)) or together (HLLPLD). Similarly, LPL chimeras were created in which the candidate regions were replaced with the corresponding HL sequences (LPLHL-(77-80), LPLHL-(85-91), and LPLHLD). Using a synthetic triolein substrate, the lipase activity of the purified enzymes was measured in the presence and absence of apoC-II. Addition of apoC-II to HLLPL-(65-68) and HLLPL-(73-79) did not significantly alter their enzyme activity. However, the activity of HLLPLD increased approximately 5-fold in the presence of apoC-II compared with an increase in native LPL activity of approximately 11-fold. Addition of apoC-II to LPLHL-(77-80) resulted in approximately 10-fold activation, whereas only approximately 6- and approximately 4-fold activation of enzyme activity was observed in LPLHL-(85-91) and LPLHLD, respectively. In summary, our results have identified 11 amino acid residues in the N-terminal domain of LPL (residues 65-68 and 73-79) that appear to act cooperatively to enable substantial activation of human LPL by apoC-II.

摘要

为了确定脂蛋白脂肪酶(LPL)中对载脂蛋白C-II(apoC-II)激活有反应的区域,将一个apoC-II肽片段与牛LPL进行交联。经过化学水解和肽段分离后,鉴定出LPL的一个特定片段(第65 - 86位氨基酸残基)与apoC-II相互作用。与肝脂肪酶(HL)相比,该片段包含氨基酸序列不同的区域,HL是同一基因家族的成员,对apoC-II无反应。利用定点诱变技术,构建了两组嵌合体,其中人LPL的两个区域(第65 - 68位和第73 - 79位氨基酸残基)与相应的人HL序列进行了交换。这些嵌合体由HL主干组成,可疑的LPL区域分别(HLLPL-(65 - 68)和HLLPL-(73 - 79))或一起(HLLPLD)取代了相应的HL序列。同样,构建了LPL嵌合体,其中候选区域被相应的HL序列取代(LPLHL-(77 - 80)、LPLHL-(85 - 91)和LPLHLD)。使用合成三油精底物,在有和没有apoC-II的情况下测量纯化酶的脂肪酶活性。向HLLPL-(65 - 68)和HLLPL-(73 - 79)中添加apoC-II并没有显著改变它们的酶活性。然而,与天然LPL活性增加约11倍相比,在有apoC-II的情况下,HLLPLD的活性增加了约5倍。向LPLHL-(77 - 80)中添加apoC-II导致酶活性增加约10倍,而在LPLHL-(85 - 91)和LPLHLD中分别仅观察到酶活性增加约6倍和约4倍。总之,我们的结果确定了LPL N端结构域中的11个氨基酸残基(第65 - 68位和第73 - 79位氨基酸残基),它们似乎协同作用以使apoC-II能够大量激活人LPL。

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